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A model for increasing yield in sawmills based on detection of subsurface defects in canted logs using Ground Penetrating Radar (GPR) system.

机译:使用探地雷达(GPR)系统检测倾斜木材中地下缺陷的锯木厂增产模型。

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摘要

Detecting subsurface defects by scanning canted logs and generating a process plan based on the detection process to cut the log can increase the yield of high grade lumber in a saw mill industry. The defect detection process is performed using the Ground Penetrating Radar (GPR) system. Past research has used the GPR system to scan logs and process the data using RADAN(TM) software. More recently, a defect detection algorithm was developed to process scanned data using the MATLABRTM software. This research uses the distance and depth coordinates generated by the defect detection algorithm to develop the process plan that generates a cutting sequence for the resaw machine. The process plan is in the form of an algorithm written in MATLABRTM with a simple user interface, keeping the resaw machine operator in mind.; For this research, a few sawmills were visited to study the manufacturing process and the primary focus was on the resaw machine operation and the lumber grading system. The resaw machine is used to make boards or lumber from canted log. Since a canted log has a smooth square cross section, this makes it suitable for the scanning process. The generated process plan is a series of numbers in a sequence (cutting sequence) that correspond to the face number of the canted log. The generated cutting sequence was validated by comparing to the conventional sawing sequence, where the operator of the resaw machine randomly performs the cutting of boards. A thirteen percent increase in the yield was noticed.
机译:通过扫描倾斜的原木并根据切割原木的检测过程生成处理计划来检测表面缺陷,可以提高锯木厂的高档木材产量。使用探地雷达(GPR)系统执行缺陷检测过程。过去的研究已使用GPR系统扫描日志并使用RADAN™软件处理数据。最近,开发了一种缺陷检测算法,以使用MATLABRTM软件处理扫描的数据。这项研究利用缺陷检测算法生成的距离和深度坐标来制定工艺计划,从而为重新锯机生成切割序列。该过程计划采用以MATLABRTM编写的算法的形式,具有简单的用户界面,牢记重新锯机操作员。为了进行这项研究,参观了几家锯木厂以研究其制造过程,并且主要关注重新锯机的操作和木材分级系统。重新锯机用于从倾斜的原木制作木板或木材。由于倾斜的原木具有光滑的正方形横截面,因此使其适合于扫描过程。生成的工艺计划是一个序列中的一系列数字(切割序列),它们对应于倾斜的原木的表面编号。通过与常规锯切序列进行比较来验证生成的切割序列,在传统锯切序列中,重新锯机的操作员随机执行板材的切割。注意到产量增加了13%。

著录项

  • 作者

    Jadeja, Jayrajsinh.;

  • 作者单位

    West Virginia University.;

  • 授予单位 West Virginia University.;
  • 学科 Geotechnology.; Engineering Industrial.
  • 学位 M.S.I.E.
  • 年度 2007
  • 页码 115 p.
  • 总页数 115
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 地质学;一般工业技术;
  • 关键词

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